Publication | Closed Access
Evaluation of Fourier transform integrals using FFT with improved accuracy and its applications
16
Citations
7
References
1984
Year
Discrete Fourier SeriesEngineeringFar-field MeasurementSmart AntennaFast Fourier TransformFourier Transform IntegralsDefinite IntegralComputational ElectromagneticsTimefrequency AnalysisFourier ExpansionSynthetic Aperture RadarAntennaComputer EngineeringFourier AnalysisImproved AccuracySignal ProcessingRadarArray ProcessingHigh-frequency ApproximationRadiation IntegralsIntegral TransformNear-field Measurement
A new technique that significantly minimizes the aliasing error encountered in the conventional use of the fast Fourier transform (FFT) algorithms for the efficient evaluation of Fourier transforms of spatially limited functions (such as those that occur in the radiation pattern analysis of reflector antennas and planar near field to far field (NF-FF) transformation) is presented and illustrated through a typical example. Employing this technique and a discrete Fourier series (DFS) expansion for the integrand, a method for computing the radiation integrals of reflector antennas and planar NF-FF transformation integrals at arbitrary observation angles with optimum use of computer memory and time is also described.
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